10.1 hd byd di2.1l tlcm product specification rev
TRANSCRIPT
REV.
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DAS-RD-2019037-O
ITEM SUPPLIER SIGNATURE DATE
Prepared
Reviewed
Approved
1
SUPPLIER Chengdu BOE Optoelectronics Technology CO., LTD
FG-Code AV101HDT-A10-28PE
Model-Number COG-PVLSZT060-03
ITEM BUYER SIGNATURE DATE
10.1 HD BYD Di2.1L TLCM Product SpecificationRev.P0
REV.
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2
REV. ECN NO. DESCRIPTION OF CHANGES DATE PREPARED
P0 - Initial Release 2020.5.26 Cao Hongtao
P1 -
导入PS Mask改善Panel,更新料号
VX-Code由COG-PVLSZT060-01
改为:COG-PVLSZT060-03
FG-Code由AV101HDT-A10-28P7
改为:AV101HDT-A10-28PE
更新图纸标签内容
2020.9.21 Cao Hongtao
REV.
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3
Contents
No. Items Page
1.0 General Description 4
2.0 Absolute Maximum Ratings 6
3.0 Electrical Specifications 7
4.0 Touch Panel Characteristics 14
5.0 Optical Specifications 17
6.0 Mechanical Characteristics 22
7.0 Reliability 26
8.0 Packing 28
9.0 Product Serial Number 29
10.0 Precautions 30
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1.0 GENERAL DESCRIPTION
1.1 Introduction
10.1 inch module is a color active matrix TFT LCD module using amorphous
silicon TFT‘s (Thin Film Transistors) as an active switching devices. It is a
transmissive type display operating in the normal black. The TFT-LCD has a
10.1 inch diagonally measured active area with resolutions (1280 horizontal by
720 vertical pixel arrays). Each pixel is divided into RED, GREEN, BLUE dots
which are arranged in vertical stripe and this panel can display 16.7M colors.
Figure 1-1 Block Diagram
1.2 Features
Wide viewing angle (U/D/L/R):85/85/85/85
Color Gamut:Typ.72%
RoHS/Halogen Free LVDS Interface
0.5t glass
1.3 Application
Vehicle-mounted Production
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1.4 General Specification
Parameter Specification Unit Remarks
Active Area 223.68(H) × 125.82(V) mm 16:9
Number of Pixels 1280(H) × RGB ×720(V) pixels
Pixel Pitch 0.17475(H) ×0.17475 (V) mm
Pixel Arrangement RGB Vertical stripe
Display Colors 16.7M colors
Color Gamut Typ72% Min67% %
Display Mode Normally black
Module Outline 247.86X160.65 mm CG
Viewing Direction
(Human Eye)
U/D/L/R Min 70/70/70/70
Typ 85/85/85/85
Polarizer Surface
CoatingHC Upper
Table 1-1 General Specifications
Note:
1.At the U/D/L/R direction, the viewing angle is same;
Figure 1-3 The TFT and CF Align Direction
1.5.The TFT and CF Align Direction;
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2.0 ABSOLUTE MAXIMUM RATINGS
The followings are maximum values which, if exceed, may cause faulty operation or
damage to the unit. The operational and non-operational maximum voltage and current
values are listed in Table 2-1
Table 2-1 Environment Absolute Maximum Ratings
Parameter Symbol Min. Max. Unit Remarks
LCD Logic Voltage VDD -0.3 4 V Ta=25+/-2°C
LCD Gamma Positive VSP -7.7 0.3 V
LCD Gamma Negative VSN -0.3 7.7 V
LCD Gate On Voltage VGH 7.2 24 VVGH-VGL<32
LCD Gate Off Voltage VGL -15 -8 V
Operating Temperature
(Humidity)
TOP -30 +85 ℃
RH - 90 % At 60°C
Storage Temperature
(Humidity)
TST -40 +90 ℃
RH - 90 % At 60°C
Note 1: Stresses above those listed under “Absolute Maximum Rating” may cause permanent
damage to the device. These are stress ratings only. Functional operation of this device at the
se or any other conditions above those indicated in the operational sections of this specification
is not implied and exposure to absolute maximum rating conditions for extended periods may a
ffect device reliability.
Note 2:VGH+|VGL|<32V.(最大值为IC理论值)
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Table 3-1 Pin Assignments for the LCD
( Recommended Connector typ: FFSKL05017N60)
PIN SYMBOL I/O Description Remark
1 TP_AVDD P Voltage for touch panel
2 TP_/INT O Interrupt pin
3 TP_/RST I Reset pin for touch panel
4 TP_SDA I/O I2C data pin
5 TP_GND P GND for touch panel
6 TP_SCL I I2C clock input pin
7 NC - Dummy Pin
8 TP_DVDD P Voltage for touch panel
9 TP_GND P GND for touch panel
10 NC - Dummy Pin
11 GND P Ground
12 D0N I Data channel 0 -
13 D0P I Data channel 0 +
14 GND P Ground
15 D1N I Data channel 1 -
16 D1P I Data channel 1 +
17 GND P Ground
18 CLKN I Clock channel -
19 CLKP I Clock channel +
20 GND P Ground
3.0 ELECTRICAL SPECIFICATIONS
3.1 The LCD Module Electrical Interface Connection
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PIN SYMBOL I/O Description Remark
21 D2N I Data channel 2 -
22 D2P I Data channel 2 +
23 GND P Ground
24 D3N I Data channel 3 -
25 D3P I Data channel 3 +
26 GND P Ground
27 NC - Dummy Pin
28 NC - Dummy Pin
29 GND P Ground
30 NC - Dummy Pin
31 NC - Dummy Pin
32 GND P Ground
33 NC - Dummy Pin
34 NC - Dummy Pin
35 Fail_DET O Fail Detection single output
36 NC - Dummy Pin
37 NC - Dummy Pin
38 VDD_OTP I OTP PIN
39 NC - Dummy Pin
40 NC - Dummy Pin
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9
Remark:
1. For “I/O”, “I” is input; “O” is output; “P” is power ; “C” is passive
2. Pin “NC” means BOE will use it but customer don’t need ,so please Customer don’t
connect it anything.
PIN SYMBOL I/O Description Remark
41 GND P Ground
42 VDD P Power pin
43 VDD P Power pin
44 GND P Ground
45 RESET I Reset Pin
46 STBYB I Standby Pin
47 SPI_CS I SPI chip select pin
48 SPI_SCL I SPI Clock pin
49 SPI_SDA I/O SPI Data pin
50 NC - Dummy Pin
51 LED A3+ P Anode of LED backlight.
52 LED A2+ P Anode of LED backlight.
53 LED A1+ P Anode of LED backlight.
54 NC - Dummy Pin
55 NTC+ C NTC Pin
56 NTC- C NTC Pin
57 NC - Dummy Pin
58 LED K3 P Cathode3 of LED backlight.
59 LED K2 P Cathode2 of LED backlight.
60 LED K1 P Cathode1 of LED backlight.
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3.2 Electrical Specifications
Ta=25+/-2°C
Table 3-3 Electrical Specifications
Notes :
1: Current Max is based “Gray 255”; Current Typ. is based “Vertical Color Bar”;2: Frame rate=60HZ,VGH-VGL<32V;3: BLU LED consists of 27 LEDs,3 strings * 9 packages, the typical drive current is 300 mA.
4: Each string LED should be drove by constant current separately.
Figure 3-2 LED&NTC Diagram
Parameter SymbolValues
Unit NotesMin Typ. Max
TFT Gate ON Voltage VGH 20 V
TFT Gate OFF Voltage VGL -10 V
TFT Common Electrode Voltage VCOM -3 - 0 V TBD
Voltage of VCC 3.15 3.3 3.45 V
Current of VCC 400 600 mA
Supply current of LED backlight Per string 100 - mA 9 LEDs
Total Supply current of LED
BacklightILEDTotal 300 - mA 3 strings
Supply voltage of LED backlight Per string - 26.1 29.7 V 3 strings
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3.3 LVDS Signal Timing
Table 3-4 LVDS Signal Timing
3.4 Signal Format
Figure 3-3 Signal Format
Parameter Symbol Min. Typ. Max. UnitConditi
on
Clock frequency RxFCLK 57.1 58.1 85 MHzHorizontal Display
Area thd 1280 DCLK
HS Period th 1309 1322 1664 DCLK
HS Blanking Thb+thfp 42 DCLK
Vertical Display Area tvd 720 TH
VS Period tv 727 733 936 TH
VS Blanking Tvbp+tvfp 13 TH
Clock period TLVCYC 11.76 ns
1 data bit time UI 1/7 TLVCYC
Clock high time TLVCH 2.8 4 4.2 UI
Clock low time TLVCL 2.8 3 4.2 UI
LVDS wake-up time TENLVDS 150 us
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3.5 LVDS DC Characteristics
Table 3-5 LVDS DC Characteristics
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3.6 Power on/off sequence
Figure 3-4 Power on/off sequence
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4.0 Touch Panel Characteristics
GENERAL DESCRIPTION
10.1” OGS Solution
Mutual Type Projected Capacitive Touch Panel (with Cypress CYAT816
58-64AS48 controller)
TP supply voltage: 3.3V
I2C interface for touch panel
Chemical Strengthen glass with AGARAF Film
Optically bonded touch panel to TFT
“RoHS” compliance
14
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4.1 Touch Panel Characteristics
Table 4-1 Touch panel features
Item Contents Unit
Type Mutual type projected capacitive touch panel -
Interface I2C (Up to 400kbits/sec) -
FunctionProvide (X, Y) coordinates and number of touch
points-
No. of touch 5 touches -
Sensing area Ø8 (Typ.) finger touch mm
Resolution 1280 x 720 -
Orientation (0,0) in the upper left corner
Input mode Finger or capacitive pen -
Uniformity(均匀性) >85%
Accuracy(准确性) 中心区域≤1.5mm,边缘区域≤2.0mm
Linearity(线性性) 中心区域≤1.5mm,边缘区域≤2.0mm
Sensitivity(灵敏性) 无断线,且中心区域≤1.5mm
Multi-Points Minimum
Distance(点间距)最小间距≤15mm
Jitter(抖动) 抖动≤1.5mm
15
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4.2 Typical Electrical Characteristics for Touch Panel
At Ta = 25C, TP_VDD(TP_VDDA & TP_VDDD)=3.3V, TP_GND=0V.
Parameter Symbol Min. Typ. Max. Unit
Analog supply voltage VDDD 3.2 3.3 3.4 V
Digital supply voltage VDDA 3.2 3.3 3.4 V
VDDD active current IDDD_ACT - TBC 26 (TBC) mA
VDDA active current IDDA_ACT - TBC 26 (TBC) mA
Table 4-2 DC characteristics of touch panel
4.3 Touch Panel Timing Characteristics
4.3.1 Reset timing
Figure 4-1 COMM_INT Timing Diagram
4.3.2 I2C Device Address for the Touch IC
Table 4-3 Format of SLA+W and SLA+R
Bit 7 Bit 6 Bit 5 Bit 4 Bit 3 Bit 2 Bit 1 Bit 0
Device Address: 0x24 Read/Write
16
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5.0 OPTICAL SPECIFICATIONS
5.1 Overview
The test of Optical specifications shall be measured in a dark room (ambient luminance
1lux and temperature = 252℃) with the equipment of Luminance meter system (Goniometer
system and TOPCON BM-5) and test unit shall be located at an approximate distance 50cm
from the LCD surface at a viewing angle of θ and Φ equal to 0. The center of the measuring
spot on the Display surface shall stay fixed.
The backlight should be operating for 30 minutes prior to measurement.
Table 5-1 Optical Specifications
Parameter Symbol Condition Min. Typ. Max. Unit Remark
Viewing Angle
range
HorizontalΘ3
CR > 10
70 85 - Deg.
Note 1Θ9 70 85 - Deg.
VerticalΘ12 70 85 - Deg.
Θ6 70 85 - Deg.
Luminance Contrast ratio CR
Θ = 0
(Center)
Normal
Viewing
Angle
800 1000 -
White luminance uniformity ΔY 80 85 % Note 4
NTSC % 67 72
White Chromaticityxw
Typ-0.03
0.295
Typ+0.03
-
Actual value
will be updated
after samples b
e tested.
Note 5
yw 0.320 -
Reproduction
of color
RedxR 0.646 -
yR 0.329 -
GreenxG 0.318 -
yG 0.620 -
BluexB 0.146 -
yB 0.080 -
Response Time
(Rising / Falling)TRT
25℃-30℃
- -30
500ms Note 6
BLU De-rating T 65℃ - - 35% F 5-4
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Parameter Condition Min. Typ. Max. Remark
Luminance
Θ = 0
(Center)
Normal
Viewing
Angle
600nit 700nit - on cover glass surface
Flicker - - -30db@+25℃,center,test picture :1+2 dot
inversion
Crosstalk 2%
Gamma 1.9 2.2 2.5 @25℃
Note :
1. Viewing angle is the angle at which the contrast ratio is greater than 10. The viewing
are determined for the horizontal or 3, 9 o’clock direction and the vertical or 6, 12
o’clock direction with respect to the optical axis which is normal to the LCD surface.
2. Contrast measurements shall be made at viewing angle of = 0 and at the center of
the LCD surface. Luminance shall be measured with all pixels in the view field set
first to white, then to the dark (black) state. (See FIGURE 1 shown in Appendix)
Luminance Contrast Ratio (CR) is defined mathematically.
Luminance when displaying a white raster
Luminance when displaying a black raster
3. Center trans of white is defined as the LCD surface. Luminance shall be measured
with all pixels in the view field set first to white. This measurement shall be taken at
the locations shown in FIGURE 4 for a total of the measurements per display.
4. The White luminance uniformity on LCD surface is then expressed as :
ΔY = ( Minimum Luminance of 9points / Maximum Luminance of 9points ) * 100
5. The color chromaticity coordinates specified in Table 4. shall be calculated from the
spectral data measured with all pixels first in red, green, blue and white.
6. The electro-optical response time measurements shall be made as FIGURE 5
shown in Appendix by switching the “data” input signal ON and OFF. The times
needed for the transmittance to change from 10% to 90% is Tr, and 90% to 10% is
Tf.
CR =
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Figure 5-2 Measurement Set Up
Figure 5-1 The Definition of Vth & Vsat
5.2 OPTICAL TEST APPENDIX
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Figure 5-3 Response Time Testing
Display data
Optical
Response
White (TFT ON)Black (TFT OFF)
100%
90%
10%
0%
Tr Tf
Black (TFT OFF)
Figure 4-4 De-rating Curve
Note:this is simulation result, will be updated on actual test, the luminance will decrease
to about 35%~40% of original performance when operation at 85℃
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NCP18XH103F0SRB
TEMP. (deg. C)RESISTANCE
(k ohm)TEMP. (deg. C)
RESISTANCE(k ohm)
-40 195.6520 +35 6.9479
-35 148.1710 +40 5.8336
-30 113.3471 +45 4.9169
-25 87.5588 +50 4.1609
-20 68.2367 +55 3.535
-15 53.6496 +60 3.0143
-10 42.5062 +65 2.5861
-5 33.8922 +70 2.2275
0 27.2186 +75 1.9245
+5 22.0211 +80 1.6685
+10 17.9255 +85 1.4521
+15 14.6735 +90 1.2680
+20 12.0805 +95 1.1096
+25 10.0000 +100 0.9738
+30 8.3145 +105 0.8580
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Table 6-1 Dimensional Parameters
6.0 MECHANICAL CHARACTERISTICS
6.1 Dimensional Requirements
Figure in next page shows mechanical outlines for the panel.
Parameter Specification Unit
Active Area 223.68(H) × 125.82(V) mm
Number of Pixels 1280(H) ×720(V) Pixels
Pixel Pitch 0.17475(H) ×RGB×0.17475(V) mm
Pixel Arrangement RGB Vertical stripe
Display Colors 16.7M colors
Display Mode Normally black
Module Thickness 7.54 mm
Module Outline 247.86X160.65(CG) mm
AA-MDL outline L/R/U/D
12.09/12.09/17.417/17.413 mm
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6.2 Outline (Front)
扫描方向
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6.3 Outline (Rear)
底部
底部
FPC+EMI TAPE阴影区域布元器件,限高2.8mm10.69 MAX(Total THK.) 8.19 MAX(Total THK.)
NO Component area
9.09 MAX(Total THK.) RTV GLUE AREA,限高1.2mm
60 1No
compoment
TP_元器件,限高3.3mm11.19 MAX(Total THK.)
No compomentNo
compoment
CON1
CNT 限高3.6mm11.49 MAX(Total THK.)
客户标签对齐EMI Tape黑色导电层边缘
相对连接器居左贴附在EMI Tape上表面。
该码是该产品的S/N码,客户要求扫描出来的是:121479-L12-X-YYMMDD-XXXXX( 供应商代码-零件代码-版本号-年月日6位-流水5位)
BOE FG CODE
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6.4 Outline (Side)
25
铜箔
铜箔0.08T(带导电背胶)
变形
度&变形
方向
(盖
板表面
0.3mm MAX)
C0.35胶框顶部
C0.5胶框底部
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Table 7-1 Reliability test
No Test Items Conditions Remark
1 High temperature storage test Ta = 90 ℃, 600 hrs
2 Low temperature storage test Ta = -40 ℃, 600 hrs
3 High temperature operation test Ta = 85℃, 600 hrs
4 Low temperature operation test Ta = -30 ℃, 600 hrs
5
High temperature & high
humidity
operation test
Ta = 60 ℃, 90%RH, 600 hrs
6 Thermal shock
Ta = -40 ℃ ↔ 85 ℃ (1 hr),
temp change <30s,
120 cycle
7 Image Sticking
Burn in 6*6 chess,1h@65℃,insp
ection pattern 50% grey,perpendic
ular ,after 30s≤L1
Note3
8 ESD test
Air Voltage:±15KV classB
Contact Voltage:±8KV classB
R: 330Ω C: 150pF
Air Voltage:
±4/6KV 待测试后确认Contact Voltage:
±4/6KV待测试后确认R: 330Ω C: 150pF
Note2
9 整机振动测试
产品按Q/BYDQ-A1901.707.3—2018
中4.1.3.1.3乘用车车身配件的振动试验的要求进行振动试验,(旋转多媒体时,横屏和竖屏状态都要做;分两组实验),振动时所使用的温度变化循环曲线按Q/BYDQ-A1901.707.3—2015中4.1.
1.4图1的要求进行试验,Top.min=-3
0℃,Top.max=70℃。 加速度有效值:27.4m/s²;频率从5Hz~2000Hz.
试验后产品应满足功能状态A的要求。
BOE不单独做该项测试。由客户端整机做测试,如客户整机测试出现问题,BOE协助改善。具体测试要求见文末附件1.
比亚迪整机测试要求..
7.0 RELIABILITY
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3.
2. CLASSB,有异常,可恢复,比如闪屏。因为整机ESD水平不仅与模组相关,也与系统相关,如果客户在做整机ESD测试时出现问题并与TLCM相关,BOE承诺配合客户进行ESD改善。
Note:1. After the reliability test, the product only guarantee function normally without any fatal defe
ct (non-display, line defect, abnormal display etc ).
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8.0 Packing
8.1. Packing Description
-. Put a LCM into a Tray
Put an EPE Spacer on surfa
ce of each LCM
-. Capacity: 2pcs / Tray
EPE Spacer
LCM
Tray
-. Put 9pcs PET Trays into a Vacuum
Bag
-. (Include: put an empty Tray on top )
Corner Tape
-. 12(2*2*3) Inner Boxes / Pal
let
.Capacity: 192pcs/Pallet
-.Put all PET Trays with Vacuum Ba
gs into an Inner Box.
Put an EPE Board on top and an
EPE Board on bottom.
-.Capacity:16pcs modules / Inner
Box
1
2
3 4
9LayersVacuum Bag
Inner Box
EPE Board
LCM
EPE Spacer
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1. Control Number
2. Rank / Grade
3. Line Classification
4. Year (2001 : 01, 2002 : 02, …)
5. Month (1,2,3, … , 9, X, Y, Z)
6. Internal Use
7. Serial Number
1 2 3 4 5 6 7
X X X X X X X X X X X X X X X X X X
XXXX XXXXXXXXXXXXXXXXXX
XX-XXXXXX-XXXXX-XXX-XXXX
AV101HDM-N10 B2
9.0 PRODUCT SERIAL NUMBER
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10.1 Handing
(1) Use fingerstalls with soft gloves in order to keep display clean during the incoming
inspection and assembly process.
(2) You must mount a module using specified mounting holes (Details refer to the drawings).
(3) Please make sure to avoid external forces applied to the Source PCB or FPC and D-IC
during the process of handling or assembling. If not, It causes panel damage or
malfunction.
(4) Note that polarizers are very fragile and could be easily damaged. Do not touch, push
or rub the exposed polarizers with glass, tweezers or anything harder than HB pencil
lead. And please do not rub with dust clothes with chemical treatment.
(5) Do not pull or fold the source D-IC which connect the source PCB or FPC and the
panel. Do not pull or fold the LED wire.
(6) After removing the protective film, when the surface becomes dusty, please wipe gently
with absorbent cotton or other soft materials like chamois soaks with alcohol or purified
water. Do not strong polar solvent because they cause chemical damage to the polarizer
(7) Wipe off saliva or water drops as soon as possible. Their long time contact with .
polarizer causes deformations and color fading.
(8) Protection film for polarizer on the module shall be slowly peeled off just before use so
that the electrostatic charge can be minimized.
(9) Since the LCD is made of glass, do not apply strong mechanical impact or static load
onto it. Handling with care since shock, vibration, and careless handling may seriously
affect the product. If it falls from a high place or receives a strong shock, the glass may
be broken.
(10) Do not disassemble the module.
(11) To determine the optimum mounting angle, refer to the viewing angle range in the
specification for each model.
(12) If the customer's set presses the main parts of the LCD, the LCD may show the
abnormal display. But this phenomenon does not mean the malfunction of the LCD
and should be pressed by the way of mutual agreement.
(13)Do not drop water or any chemicals onto the LCD’s surface.
(14)The ITO pad area needs special careful caution because it could be easily corroded.
Do not contact the ITO pad area with HCFC, Soldering flux, Chlorine, Sulfur, saliva or
fingerprint. To prevent the ITO corrosion, customers are recommended that the ITO
area would be covered by UV or silicon.
注:① (4)(6)(7)(8) 涉及到Pol相关条目适用于OC/MDL出货产品,针对Q/Single建议改为LCD su
rface
②第(14)条适用于Q/Single出货产品
10.0 PRECAUTIONS
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10.2 Operating Precautions
(1) Be careful for condensation at sudden temperature change. Condensation makes
damage to polarizer or electrical contacted parts. And after fading condensation, smear or
spot will occur.
(2) Module has high frequency circuits. Sufficient suppression to the electromagnetic
interference shall be done by system manufacturers. Grounding and shielding methods
may be important to minimized the interference.
(3) The electrochemical reaction caused by DC voltage will lead to LCD degradation, so DC
drive should be avoided.
(4) The LCD modules use C-MOS LSI drivers, so customers are recommended that any
unused input terminal would be connected to Vdd or Vss, do not input any signals before
power is turn on, and ground you body, work/assembly area, assembly equipments to
protect against static electricity.
(5) Do not exceed the absolute maximum rating value. (supply voltage variation, input voltage
variation, variation in part contents and environmental temperature, and so on) Otherwise
the Module may be damaged.
(6) Design the length of cable to connect between the connector for back-light and the
converter as short as possible and the shorter cable shall be connected directly. The
longer cable between that of back-light and that of converter may cause the luminance of
LED to lower and need a higher startup voltage(Vs).
(7) Connectors are precise devices for connecting PCB and transmitting electrical signals.
Operators should insert and unplug MDL in parallel when assembling MDL.
(8) Do not connect or disconnect the cable to/ from the module at the "Power On" condition.
(9) When the module is operating, do not lose CLK, HS,VS signals. If any one these signals
is lost, the LCD panel would be damaged.
(10) Obey the supply voltage sequence. If wrong sequence is applied, the module would be
damaged.
(11) Do not re-adjust variable resistor or switch etc.
注:①(1)涉及到Pol相关条目适用于OC/MDL出货产品,针对Q/Single建议改为LCD surface
②(6)(7)涉及到connector相关适用于MDL出货产品
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10.3 Electrostatic Discharge Control
(1) Since a module is composed of electronic circuits, it is not strong to electrostatic
discharge. Make certain that treatment persons are connected to ground through wrist
band etc. And don’t touch interface pin directly. Keep products as far away from static
electricity as possible.
(2) Avoid the use work clothing made of synthetic fibers. We recommend cotton clothing or
other conductivity-treated fibers.
10.4 Precautions for Strong Light Exposure
Strong light exposure causes degradation of polarizer and color filter. It is not allowed to
store or run directly in strong light or in high temperature and humidity for a long time.
10.5 Storage Precautions
(1) When storing the LCD modules, avoid exposure to direct sunlight or to the light of
fluorescent lamps.
(2) The LCD modules should be stored under the storage temperature range. the
recommend condition is: Temperature : 0℃~ 40℃, Relatively humidity: ≤80%, and no
more than 1 year.
(3) The LCD modules should be stored in the room without acid, alkali and harmful gas.
10.6 Handling Precautions for Protection Film (不适用于Q/Single出货产品)
(1) Remove the protective film slowly, keeping the removing direction approximate
30-degree not vertical from panel surface, If possible, under ESD control device like
ion blower, and the humidity of working room should be kept over 50%RH to reduce
the risk of static charge.
(2) In handling the LCD, wear non-charged material gloves. And the conducting wrist to
the earth and the conducting shoes to the earth are necessary.
10.7 Operation Condition Guide
(1) Lifetime in this spec. is guaranteed only when Commercial Display is used according to
operating usages.
(2) Module used in unnormal orientation mode,need to confirm with the manufacturer.
(3) Do not exceed the absolute maximum rating value. (supply voltage variation, input voltage
variation, variation in part contents and environmental temperature, and so on) Otherwise
the Module may be damaged.
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(4) Dew drop atmosphere should be avoided.
(5) The storage room should be equipped with a good ventilation facility, which has a
temperature controlling system.
(6) When expose to drastic fluctuation of temperature (hot to cold or cold to hot) ,the
LCD may be affected; Specifically, drastic temperature fluctuation from cold to
hot ,produces dew on the LCD's surface which may affect the operation of the
polarizer and the LCD.
(7) Response time will be extremely delayed at lower temperature than the operating
temperature range and on the other hand at higher temperature LCD may turn black
at temperature above its operational range. However those phenomena do not mean
malfunction or out of order with the LCD. The LCD will revert to normal operation
once the temperature returns to the recommended temperature range for normal
operation.
10.8 Others
(1)When returning the module for repair or etc., Please pack the module not to be
broken. We recommend to use the original shipping packages.
(2) In order to prevent potential problems, flicker should be adjusted by optimizing the
Vcom value in customer LCM.(适用于Q panel/single/OC出货)(3) If the liquid crystal material leaks from the panel, it should be kept away from the eyes
or mouth. In case of contact with hands, legs or clothes, it must be washed away
thoroughly with soap.
(4) For the crash damaged or unnecessary LCD, it is recommended to wash off liquid
crystalby either of solvents such as acetone and ethanol an should be burned up later.
(5) If you should swallow the liquid crystal, first, wash your mouth thoroughly with water,
then drink a lot of water and induce vomiting, and then, consult a physician.
(6) If the liquid crystal should get in your eyes, flush your eyes with running water for at
least fifteen minutes.
(7) Client needs to add heat dissipation design , such as fan, water cooling , etc.
(8) After assembling into modules, guarantee that the temperature rise of panel surface
does not exceed 20 C at room temperature.
(9) Customers need to drive current down according to derating curve.
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